Conveying equipment for garment processing production line

By compressing down jackets using drive components and sealing plate structures, and combining this with air extraction components to create a sealed environment, the problems of large storage space and moisture impact on down jackets are solved, achieving efficient storage and transportation.

CN121717035AInactive Publication Date: 2026-03-24JIUJIANG ICE ENERGY WEAVING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-02-05
Publication Date
2026-03-24
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing technologies do not compress down jackets during transportation and storage, resulting in excessive warehouse space usage and easy clumping or surface indentations due to moisture, affecting appearance and quality.

Method used

It employs a drive assembly and sealing plate structure, compresses the down jacket through threaded rods and metal clamps, and uses locking and extraction assemblies to create a sealed environment, reducing space occupation and preventing moisture effects.

Benefits of technology

It effectively reduces the storage space required for down jackets, prevents down from clumping and surface indentations, improves transportation and storage efficiency, and reduces manual handling time and effort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of garment production, and discloses a garment processing production line conveying device which comprises a wooden tray and an aluminum alloy transfer box placed on the wooden tray. Through cooperation of structures such as the driving assembly and the sealing plate, packaged down jackets are neatly stacked in the aluminum alloy transfer box, the sealing plate is re-inserted into the first guide groove, all threaded rods are sequentially rotated, the sealing plate can be forced to descend through the metal clamping plate, the down jackets are compressed, and the storage space is saved; the sealing plates are locked together through the locking assemblies, a second set of down jackets can continue to be stacked on the sealing plates, the second set of sealing plates continue to be installed according to the process, and the second set of down jackets are compressed for the second time so that more down jackets can be placed, the space for stacking the down jackets can be effectively reduced, more down jackets can be placed in a warehouse, and the working efficiency is improved. And when the uppermost sealing plate is detached, the down jacket below the uppermost sealing plate cannot be excessively expanded and fall down on the ground, so that the finishing time and vigor of workers are reduced.
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Description

Technical Field

[0001] This invention belongs to the field of garment production technology, specifically a conveying device for a garment processing production line. Background Technology

[0002] The garment manufacturing process involves several key stages, from raw material processing to finished product delivery, each requiring meticulous management and technical coordination. The production of down jackets, in particular, demands extra care; open flames must be avoided in the factory, and the humidity in the warehouse must not be too high, otherwise the down will clump together. In existing technical solutions for transporting down jackets, the only measures taken are to control the humidity in the warehouse and prevent open flames. However, because down is quite fluffy, the packaging of down jackets is not vacuumed or compressed before transportation and storage. Otherwise, after being transported to the warehouse, long-term storage combined with the time required for express delivery will cause indentations on the surface of the garments. Upon arrival, the down will not be able to restore its original fluffiness, and the indentations on the surface will need to be repeatedly ironed or restored using other technical means. As a result, down jackets will take up too much space after being transported to the warehouse. Summary of the Invention

[0003] To address the problems mentioned in the background section, this invention provides a conveying device for a garment processing production line, which solves the problem that existing storage technologies do not compress the packaging of down jackets, resulting in excessive warehouse space being occupied by their storage.

[0004] To achieve the above objectives, the present invention provides the following technical solution: a conveying device for a garment processing production line, comprising a wooden pallet and an aluminum alloy transfer box placed thereon, and further comprising: Drive components are located at the four corners of the wooden pallet; Four sealing plates are installed inside the wooden pallet, and each sealing plate is equipped with a locking component; The locking assembly is used to lock every two adjacent sealing plates; One of the drive components includes a threaded rod rotatably mounted on an aluminum alloy transfer box, a metal knob mounted on the top of the threaded rod, a guide groove 1 provided on the inner wall of the aluminum alloy transfer box, a guide groove 2 provided on the guide groove 1, and the width of the guide groove 2 being greater than the width of the guide groove 1. The corner of the sealing plate is slidably engaged in the guide groove one by a metal clip. The width of one end of the metal clip is equal to the width of the guide groove two. The width of the connection between the metal clip and the sealing plate is equal to the width of the guide groove one. The metal clip is threadedly connected to the threaded rod.

[0005] Preferably, the inner walls of the first guide groove and the second guide groove are provided with a rubber layer, and the connection between the metal plate and the sealing plate is covered with a rubber layer.

[0006] Preferably, one of the locking components includes a latch hinged to one of the sealing plates, the latch being connected to the sealing plate via a spring plate, and the latch being inserted into an adjacent sealing plate.

[0007] Preferably, the locking assembly further includes a handle installed on the top of the latch, the sealing plate is provided with a first slot for the latch to be inserted, plastic blocks are symmetrically arranged on the slot, and the latch is provided with a second slot for the plastic blocks to be inserted.

[0008] Preferably, the locking components are circumferentially and equidistantly distributed on each sealing plate, the latch is disposed on one of the sealing plates, the second slot is located on the adjacent sealing plate, and the inner wall of the second slot is covered with a rubber layer.

[0009] Preferably, the inner wall of the aluminum alloy transfer box is symmetrically provided with air extraction components; The air extraction assembly includes a sealing plate 1 that is symmetrically and movably installed in the inner wall of the aluminum alloy transfer box. The outer side of each sealing plate 1 is connected to the aluminum alloy transfer box by a spring 1, and the outer side of each sealing plate 1 is connected to a threaded rod by a steel wire rope. A guide rod is movably inserted through the inner wall of the aluminum alloy transfer box, and a sealing plate is installed at one end of the guide rod inside the aluminum alloy transfer box.

[0010] Preferably, the drive assembly further includes a guide groove three disposed on the inner wall of the aluminum alloy transfer box, the steel wire rope movably passing through the guide groove three, and the sealing plate two sealing the guide rod passing through the connection of the aluminum alloy transfer box.

[0011] Preferably, every two symmetrical springs and steel wire ropes are arranged on the outside of one of the sealing plates. There are two guide grooves arranged symmetrically. The penetration point of the upper steel wire rope and the aluminum alloy transfer box is lower than the end of the guide groove, and the connection point of the lower steel wire rope and the aluminum alloy transfer box is higher than the end of the guide groove.

[0012] Preferably, the contact surfaces of the sealing plate and the aluminum alloy transfer box are both provided with a rubber layer, and the guide rod is connected to the inner wall of the aluminum alloy transfer box through the spring.

[0013] Preferably, lifting lugs can be welded or bolted onto the aluminum alloy transfer box, and the wooden pallet can be replaced with the same product of different specifications.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: This invention, through the coordinated use of drive components and sealing plates, neatly stacks packaged down jackets inside an aluminum alloy transfer box. The sealing plates are then reinstalled into the guide groove. By rotating the threaded rods in sequence, the sealing plates are forced down by metal clamps, compressing the down jackets and saving storage space. The sealing plates are locked together by a locking component, allowing for the stacking of a second set of down jackets. The process is repeated to install a second set of sealing plates and compress the second set of down jackets, accommodating even more down jackets. This effectively reduces the space required for stacking down jackets, allowing for more down jackets to be stored in the warehouse. When the top sealing plate is removed, the down jackets below it will not over-inflate and collapse to the ground, reducing the time and effort required for workers to organize the jackets.

[0015] This invention utilizes a combination of sealing plates and locking components. By folding down one of the sealing plates and engaging it in the first slot of the adjacent sealing plate, the plastic block, being made of plastic, can enter the second slot and remain engaged, preventing the lock from falling off. Once all locking components are in place, the sealing plates form a unified whole and are not easily disassembled. After the lock engages with the sealing plate, a spring plate applies a force to the lock, further reinforcing the connection between the sealing plates. This operation not only facilitates the assembly and disassembly of the sealing plates and the aluminum alloy transfer box but also enhances the sealing plates' load-bearing capacity for down jackets.

[0016] This invention utilizes a combination of a vacuum assembly and sealing plates. A rotating threaded rod winds up a steel wire rope, pulling on the first sealing plate to reduce the air pressure inside the aluminum alloy transfer box. When the sealing plates are aligned and positioned at the top of the guide groove, a seal is formed between the bottom of the sealing plate and the aluminum alloy transfer box. After the down has been stored, pressing the guide rod pushes the second sealing plate, connecting the interior of the aluminum alloy transfer box to the reduced-pressure chamber. This further reduces the air pressure inside the aluminum alloy transfer box, preventing the down from clumping due to excessive humid air. The sealed negative pressure environment isolates air humidity, preventing condensation caused by temperature differences during the transition from autumn to winter, especially in humid southern regions, reducing the risk of mold growth. Short-term sealing also prevents dust or insects from adhering to the surface. Attached Figure Description

[0017] Figure 1 This is a first schematic diagram of the appearance structure of the present invention; Figure 2 This is a second schematic diagram of the appearance structure of the present invention; Figure 3 This is a schematic diagram showing the structural cooperation between the drive component and the air extraction component of the present invention; Figure 4 This is a schematic diagram showing the interaction between the drive assembly and the sealing plate structure of the present invention; Figure 5 This is a schematic diagram of the fit between the threaded rod and the wire rope structure of the present invention; Figure 6 This is a schematic diagram of the structural cooperation between the aluminum alloy transfer box and the air extraction component of the present invention; Figure 7 This is a schematic diagram showing the structural cooperation between the sealing plate and the locking assembly of the present invention; Figure 8 This is a schematic diagram showing the disassembled structure of the locking component of the present invention.

[0018] In the diagram: 1. Wooden pallet; 2. Aluminum alloy transfer box; 3. Drive assembly; 31. Threaded rod; 32. Metal knob; 33. Guide groove one; 34. Guide groove two; 35. Guide groove three; 4. Sealing plate; 41. Metal clamping plate; 5. Locking assembly; 51. Lock; 52. Spring plate; 53. Handle; 54. Plastic block; 6. Vacuum assembly; 61. Sealing plate one; 62. Spring one; 63. Steel wire rope; 64. Guide rod; 65. Spring two; 66. Sealing plate two. Detailed Implementation

[0019] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0020] like Figures 1 to 8 As shown, the present invention provides a conveying device for a garment processing production line, including a wooden pallet 1 and an aluminum alloy transfer box 2 placed thereon, and further comprising: Drive components 3 are installed at the four corners of the wooden pallet 1; Four sealing plates 4 are installed inside the wooden pallet 1, and each sealing plate 4 is equipped with a locking component 5; Locking assembly 5 is used to lock every two adjacent sealing plates 4; One of the drive components 3 includes a threaded rod 31 rotatably mounted on an aluminum alloy transfer box 2, a metal knob 32 mounted on the top of the threaded rod 31, a guide groove 33 on the inner wall of the aluminum alloy transfer box 2, a guide groove 34 on the guide groove 33, and the width of the guide groove 34 being greater than the width of the guide groove 33. The corner of the sealing plate 4 is slidably engaged in the guide groove 33 by the metal clamp 41. The width of one end of the metal clamp 41 is equal to the width of the guide groove 34. The width of the connection between the metal clamp 41 and the sealing plate 4 is equal to the width of the guide groove 33. The metal clamp 41 is threadedly connected to the threaded rod 31.

[0021] Lifting lugs can be welded or bolted onto the aluminum alloy transfer box 2, and the wooden pallet 1 can be replaced with similar products of different specifications.

[0022] Using the above scheme: Since the width of one end of the metal card plate 41 is equal to that of the guide groove 34, each sealing plate 4 can be removed from the aluminum alloy transfer box 2 first. Then, the packaged down jackets are neatly stacked inside the aluminum alloy transfer box 2. After the aluminum alloy transfer box 2 is full, the metal card plate 41 is inserted into the guide groove 34. Since the down jacket is compressible and the metal card plate 41 is threadedly connected to the threaded rod 31, each threaded rod 31 is rotated in sequence. The metal card plate 41 can force the sealing plate 4 to descend and compress the down jacket. When it cannot be compressed, the locking components 5 can lock each two adjacent sealing plates 4 together. Finally, the four sealing plates 4 are locked together by the four locking components 5. During this process, it should be noted that every four sealing plates 4 located on the same horizontal plane can be regarded as a group. After being locked by the locking component 5, they form a complete plate. After compressing the down jacket, the second group of down jackets can be stacked on the sealing plate 4. The second group of sealing plates 4 can be installed and the second group of down jackets can be compressed again in the same manner to accommodate more down jackets. When it is necessary to pack and sell the down jackets, the top sealing plate 4 can be removed and the down jackets inside the aluminum alloy transfer box 2 can be taken out. This effectively reduces the space required for stacking down jackets, allowing more down jackets to be placed in the warehouse. When the top sealing plate 4 is removed, the down jackets underneath will not over-inflate and collapse to the ground, reducing the time and effort required for workers to sort them.

[0023] like Figures 1-3 and Figures 6-8 As shown, one of the locking components 5 includes a latch 51 hinged to one of the sealing plates 4, the latch 51 being connected to the sealing plate 4 via a spring plate 52, and the latch 51 being inserted into another adjacent sealing plate 4.

[0024] Locking components 5 are circumferentially and equidistantly distributed on each sealing plate 4. The latch 51 is set on one of the sealing plates 4, and the second slot is located on the adjacent sealing plate 4. The inner wall of the second slot is covered with a rubber layer.

[0025] The locking assembly 5 also includes a handle 53 installed on the top of the latch 51, a first slot for the latch 51 to be inserted into the sealing plate 4, plastic blocks 54 symmetrically arranged on the slot, and a second slot for the plastic blocks 54 to be inserted into the latch 51.

[0026] Using the above scheme: when each sealing plate 4 moves on the guide groove 33 via the metal clip 41, the latch 51 on one of the sealing plates 4 is folded over so that the latch 51 is engaged with the first groove on the adjacent sealing plate 4. Since the plastic block 54 is made of plastic, it is actually a flexible material. Therefore, the plastic block 54 can enter the second groove and be engaged there to prevent the latch 51 from falling off. After each locking component 5 has completed its work, the sealing plates 4 will form a whole and will not easily disintegrate. This operation not only facilitates the assembly and disassembly of the sealing plate and the aluminum alloy transfer box, but also enhances the sealing plate's load-bearing capacity for down jackets.

[0027] After the latch 51 engages with the sealing plate 4, the spring plate 52 will also apply a force to the latch 51 to press tightly against the sealing plate 4, thereby further reinforcing the connection between the various sealing plates 4.

[0028] like Figures 1-8 As shown, the inner wall of the aluminum alloy transfer box 2 is symmetrically equipped with air extraction components 6; The air extraction assembly 6 includes sealing plates 61 that are symmetrically and movably installed in the inner wall of the aluminum alloy transfer box 2. The outer side of each sealing plate 61 is connected to the aluminum alloy transfer box 2 by a spring 62, and the outer side of each sealing plate 61 is connected to the threaded rod 31 by a wire rope 63. A guide rod 64 is movably inserted through the inner wall of the aluminum alloy transfer box 2, and a sealing plate 66 is installed at one end of the guide rod 64 inside the aluminum alloy transfer box 2.

[0029] The sealing plate 266 and the sealing guide rod 64 pass through the connection of the aluminum alloy transfer box 2.

[0030] The drive assembly 3 also includes a guide groove 35 disposed on the inner wall of the aluminum alloy transfer box 2, through which the steel wire rope 63 movably passes. The inner walls of guide groove 1 33 and guide groove 2 34 are provided with rubber layers, and the connection between metal plate 41 and sealing plate 4 is covered with a rubber layer.

[0031] Using the above scheme: the sealing plate 61 is actually located in an independent chamber in the inner wall of the aluminum alloy transfer box 2. So when the threaded rod 31 rotates to compress the down jacket below through the metal clamp 41 and the sealing plate 4, the threaded rod 31 simultaneously winds up the wire rope 63 to pull the sealing plate 61, which will reduce the air pressure in the chamber inside the aluminum alloy transfer box 2. It should be noted that, since the down jacket still has expansion after being compressed, it can push the sealing plate 4 upward and rotate the threaded rod 31 until the connection between the metal clamp plate 41 and the sealing plate 4 is located at the end of the guide groove 33. However, the guide groove 33 and the guide groove 34 are provided with a rubber layer, and the connection between the metal clamp plate 41 and the sealing plate 4 is also provided with rubber. Therefore, after the sealing plates 4 are combined, a seal is formed between the bottom of the sealing plate 4 and the aluminum alloy transfer box 2. After the down has been stored, press the guide rod 64, which pushes the sealing plate 66, so that the interior of the aluminum alloy transfer box 2 is connected with the chamber after the air pressure is reduced. The air pressure inside the aluminum alloy transfer box 2 will be reduced, which will prevent the down from clumping due to excessive humid air inside the aluminum alloy transfer box 2. At the same time, the sealed negative pressure environment isolates air humidity and avoids condensation caused by temperature differences during the transition from autumn to winter, especially in humid southern regions, thus reducing the risk of mold growth. Short-term sealing can also prevent dust or insects from adhering to the surface.

[0032] After the sealing plate 4 is removed, the air pressure inside the aluminum alloy transfer box 2 returns to normal. Spring 62 pushes sealing plate 61 back to its initial position, and the air pressure will push sealing plate 66 to open, so that the air extraction component 6 returns to its initial position. At the same time, sealing plate 61 pulls threaded rod 31 through steel wire rope 63, so that threaded rod 31 also returns to its initial position, further reducing the time and labor required to take out the down jacket.

[0033] like Figures 1-8 As shown, each pair of symmetrical springs 62 and steel wire ropes 63 are arranged on the outside of a sealing plate 61. There are two guide grooves 35 arranged symmetrically. The point where the upper steel wire rope 63 passes through the aluminum alloy transfer box 2 is lower than the end of the guide groove 35, and the point where the lower steel wire rope 63 connects to the aluminum alloy transfer box 2 is higher than the end of the guide groove 35.

[0034] The contact surfaces of the sealing plate 66 and the aluminum alloy transfer box 2 are both provided with rubber layers, and the guide rod 64 is connected to the inner wall of the aluminum alloy transfer box 2 through the spring 65.

[0035] Using the above solution: the sealing plate 61 can be pushed and reset or pulled more stably by the symmetrically arranged springs 62 and steel wire ropes 63; When the wire rope 63 pulls the sealing plate 61, due to the difference between the connection and the end of the guide groove 35, the wire rope 63 will eventually wrap around the threaded rod 31 instead of piling up on the threaded rod 31 at one point. This can effectively extend the service life of the wire rope 63. In the initial state, spring 65 pushes guide rod 64, causing sealing plate 66 to adhere tightly to the inner wall of aluminum alloy transfer box 2, instead of sliding into the interior of aluminum alloy transfer box 2, so as not to delay the placement of down jacket inside aluminum alloy transfer box 2.

[0036] Working principle and usage process of this invention: First, remove each sealing plate 4 from the aluminum alloy transfer box 2. Then, neatly stack the packaged down jackets inside the aluminum alloy transfer box 2. After the aluminum alloy transfer box 2 is full, insert the metal card plate 41 into the guide groove 34. Since the down jacket is compressible and the metal card plate 41 is threadedly connected to the threaded rod 31, rotate each threaded rod 31 in sequence. The metal card plate 41 can force the sealing plate 4 to descend and compress the down jacket. When it cannot be compressed, the locking assembly 5 can lock each two adjacent sealing plates 4 together. Finally, the four sealing plates 4 are locked together by the four locking assemblies 5. The sealing plate 61 is actually located in a separate chamber in the inner wall of the aluminum alloy transfer box 2. So when the threaded rod 31 rotates to compress the down jacket below through the metal clamp 41 and the sealing plate 4, the threaded rod 31 simultaneously winds up the wire rope 63 to pull the sealing plate 61, which will reduce the air pressure in the chamber inside the aluminum alloy transfer box 2. Because the down jacket still expands after being compressed, it can push the sealing plate 4 upward until the connection between the metal plate 41 and the sealing plate 4 is located at the end of the guide groove 33. However, the guide groove 33 and the guide groove 34 are provided with a rubber layer, and the connection between the metal plate 41 and the sealing plate 4 is also provided with rubber. Therefore, after the sealing plates 4 are combined, a seal is formed between the bottom of the sealing plate 4 and the aluminum alloy transfer box 2. After the down is stored, press the guide rod 64, which pushes the sealing plate 66, so that the interior of the aluminum alloy transfer box 2 is connected with the chamber after the air pressure is reduced, and the air pressure inside the aluminum alloy transfer box 2 will be reduced. During this process, every four sealing plates 4 located on the same horizontal plane can be considered as a group. After being locked by the locking component 5, they form a complete plate. After compressing the down jackets, a second group of down jackets can be stacked on the sealing plate 4. The second group of sealing plates 4 can be installed and the second group of down jackets can be compressed again in the same manner to accommodate more down jackets. When it is necessary to pack and sell the down jackets, the top sealing plate 4 can be removed and the down jackets inside the aluminum alloy transfer box 2 can be taken out.

[0037] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0038] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A conveying device for a garment processing production line, comprising a wooden pallet (1) and an aluminum alloy transfer box (2) placed thereon, characterized in that, Also includes: Drive components (3) are set at the four corners of the wooden pallet (1); Four sealing plates (4) are installed inside the wooden pallet (1), and each sealing plate (4) is equipped with a locking component (5). The locking assembly (5) is used to lock every two adjacent sealing plates (4); One of the drive components (3) includes a threaded rod (31) rotatably mounted on an aluminum alloy transfer box (2), a metal knob (32) is mounted on the top of the threaded rod (31), a guide groove (33) is provided on the inner wall of the aluminum alloy transfer box (2), a guide groove (34) is provided on the guide groove (33), and the width of the guide groove (34) is greater than the width of the guide groove (33). The corner of the sealing plate (4) is slidably engaged in the guide groove (33) by a metal clip (41). The width of one end of the metal clip (41) is equal to the width of the guide groove (34). The width of the connection between the metal clip (41) and the sealing plate (4) is equal to the width of the guide groove (33). The metal clip (41) is threadedly connected to the threaded rod (31).

2. The conveying equipment for a garment processing production line according to claim 1, characterized in that: The inner walls of the first guide groove (33) and the second guide groove (34) are provided with rubber layers, and the connection between the metal plate (41) and the sealing plate (4) is covered with a rubber layer.

3. The conveying equipment for a garment processing production line according to claim 1, characterized in that: One of the locking components (5) includes a latch (51) hinged to one of the sealing plates (4), the latch (51) being connected to the sealing plate (4) by a spring plate (52), and the latch (51) being inserted into the adjacent other sealing plate (4).

4. The conveying equipment for a garment processing production line according to claim 3, characterized in that: The locking assembly (5) also includes a handle (53) installed on the top of the latch (51), the sealing plate (4) is provided with a first slot for the latch (51) to be inserted, plastic blocks (54) are symmetrically arranged on the slot, and the latch (51) is provided with a second slot for the plastic blocks (54) to be inserted.

5. The conveying equipment for a garment processing production line according to claim 4, characterized in that: The locking components (5) are circumferentially and equidistantly distributed on each sealing plate (4). The latch (51) is set on one of the sealing plates (4). The second slot is located on the adjacent sealing plate (4). The inner wall of the second slot is covered with a rubber layer.

6. The conveying equipment for a garment processing production line according to claim 5, characterized in that: The aluminum alloy transfer box (2) is symmetrically provided with air extraction components (6) in the inner wall; The air extraction assembly (6) includes a sealing plate (61) symmetrically and movably installed in the inner wall of the aluminum alloy transfer box (2). The outer side of each sealing plate (61) is connected to the aluminum alloy transfer box (2) by a spring (62), and the outer side of each sealing plate (61) is connected to a threaded rod (31) by a wire rope (63). A guide rod (64) is movably inserted through the inner wall of the aluminum alloy transfer box (2), and a sealing plate (66) is installed at one end of the guide rod (64) inside the aluminum alloy transfer box (2).

7. The conveying equipment for a garment processing production line according to claim 6, characterized in that: The drive assembly (3) also includes a guide groove three (35) set on the inner wall of the aluminum alloy transfer box (2), the steel wire rope (63) movably passes through the guide groove three (35), and the sealing plate two (66) seals the guide rod (64) through the connection of the aluminum alloy transfer box (2).

8. The conveying equipment for a garment processing production line according to claim 7, characterized in that: Two symmetrical springs (62) and steel wire ropes (63) are arranged on the outside of one of the sealing plates (61). There are two guide grooves (35) arranged symmetrically. The upper end of the steel wire rope (63) passes through the aluminum alloy transfer box (2) and is lower than the end of the guide groove (35). The lower end of the steel wire rope (63) connects to the aluminum alloy transfer box (2) and is higher than the end of the guide groove (35).

9. The conveying equipment for a garment processing production line according to claim 8, characterized in that: The sealing plate 2 (66) and the aluminum alloy transfer box (2) are both provided with a rubber layer, and the guide rod (64) is connected to the inner wall of the aluminum alloy transfer box (2) through spring 2 (65).

10. The conveying equipment for a garment processing production line according to claim 9, characterized in that: The aluminum alloy transfer box (2) can be welded or bolted with lifting lugs, and the wooden pallet (1) can be replaced with similar products of different specifications.